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US20180235576A1 - Ultrasound doppler and elastography for ablation prediction and monitoring - Google Patents

Ultrasound doppler and elastography for ablation prediction and monitoring
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Publication number
US20180235576A1
US20180235576A1US15/897,803US201815897803AUS2018235576A1US 20180235576 A1US20180235576 A1US 20180235576A1US 201815897803 AUS201815897803 AUS 201815897803AUS 2018235576 A1US2018235576 A1US 2018235576A1
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Prior art keywords
tissue
ablation
ablation zone
delivered
microwave energy
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US15/897,803
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Joseph D. Brannan
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Covidien LP
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Covidien LP
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Priority to US15/897,803priorityCriticalpatent/US20180235576A1/en
Priority to JP2018028713Aprioritypatent/JP7231983B2/en
Priority to EP18157796.6Aprioritypatent/EP3366252B1/en
Priority to CN201810153994.9Aprioritypatent/CN108451549B/en
Priority to CN201820262089.2Uprioritypatent/CN209360741U/en
Priority to CN202111190442.3Aprioritypatent/CN113907796A/en
Publication of US20180235576A1publicationCriticalpatent/US20180235576A1/en
Assigned to COVIDIEN LPreassignmentCOVIDIEN LPASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BRANNAN, JOSEPH D.
Assigned to COVIDIEN LPreassignmentCOVIDIEN LPASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: BRANNAN, JOSEPH D.
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Abstract

A method for ablation zone detection includes delivering microwave energy to tissue at a treatment location by way of an ablation device, delivering ultrasound energy to the tissue by way of an ultrasound device, receiving, from a plurality of respective portions of the tissue by way of the ultrasound device, a plurality of ultrasound return signals that are based on the delivered ultrasound energy, detecting, in the plurality of ultrasound return signals, a plurality of respective Doppler shifts that are based on the microwave energy delivered to the tissue, determining an ablation zone characteristic based on the plurality of Doppler shifts, and displaying, by way of a graphical user interface, an image representing at least a portion of the tissue and a representation of the ablation zone characteristic.

Description

Claims (16)

What is claimed is:
1. A method for ablation zone detection, the method comprising:
delivering microwave energy to tissue at a treatment location by way of an ablation device;
delivering ultrasound energy to the tissue by way of an ultrasound device;
receiving, from a plurality of respective portions of the tissue by way of the ultrasound device, a plurality of ultrasound return signals that are based on the delivered ultrasound energy;
detecting, in the plurality of ultrasound return signals, a plurality of respective Doppler shifts that are based on the microwave energy delivered to the tissue;
determining an ablation zone characteristic based on the plurality of Doppler shifts; and
displaying, by way of a graphical user interface, an image representing at least a portion of the tissue and a representation of the ablation zone characteristic.
2. The method according toclaim 1, wherein the plurality of Doppler shifts have a plurality of directions, and wherein the determining the ablation zone characteristic includes identifying one or more regions of the tissue that correspond to one or more of the plurality of Doppler shifts, respectively.
3. The method according toclaim 1, further comprising:
determining a plurality of characteristics of the plurality of Doppler shifts,
wherein the plurality of characteristics includes any one or a combination of an amount of Doppler shift, a rate of change of the amount of Doppler shift, a direction of Doppler shift, a rate of change of the direction of Doppler shift, or a location in the tissue based upon which Doppler shift is detected; and
determining whether each of the plurality of characteristics exceeds one or more thresholds,
wherein the determining of the ablation zone characteristic is further based on a result of the determining of whether each of the plurality of characteristics exceeds the one or more thresholds.
4. The method according toclaim 3, wherein the determining of the ablation zone characteristic includes defining an ablation zone,
the portions of the tissue that correspond to the plurality of Doppler shifts having respective characteristics that exceed the one or more thresholds being included in the ablation zone, and
the portions of the tissue that correspond to the plurality of Doppler shifts having respective characteristics that do not exceed the one or more thresholds being excluded from the ablation zone,
wherein the ablation zone characteristic includes any one or a combination of a shape, a size, or a location of the ablation zone.
5. The method according toclaim 1, further comprising:
determining a predicted ablation zone characteristic based on any one or a combination of the plurality of Doppler shifts, the determined ablation zone characteristic, a setting of the ablation device, an elapsed duration for which the microwave energy is delivered to the tissue, an expected duration for which the microwave energy will be delivered to the tissue, a location in the tissue to which the microwave energy is delivered, or one or more characteristics of a signal by which the microwave energy is delivered to the tissue; and
displaying, by way of the graphical user interface, a representation of the predicted ablation zone characteristic.
6. The method according toclaim 5, wherein the one or more characteristics of the signal by which the microwave energy is delivered include any one or a combination of an amount of power of the signal, an amplitude of the signal, a frequency of the signal, a frequency of pulsing of the signal, or a width of pulsing of the signal.
7. The method according toclaim 1, further comprising:
determining an estimated amount of time until completion of an ablation procedure, based on any one or a combination of the plurality of Doppler shifts, the determined ablation zone characteristic, an elapsed duration for which the microwave energy is delivered to the tissue, a location in the tissue to which the microwave energy is delivered, or one or more characteristics of a signal by which the microwave energy is delivered; and
displaying, via the graphical user interface, an indicator of the estimated amount of time until completion of the ablation procedure.
8. The method according toclaim 1, further comprising:
determining whether an ablation procedure is completed based on any one or a combination of the plurality of Doppler shifts, the determined ablation zone characteristic, an elapsed duration for which the microwave energy is delivered to the tissue, or a location in the tissue to which the microwave energy is delivered, or one or more characteristics of a signal by which the microwave energy is delivered; and
displaying, via the graphical user interface, an indicator of whether the ablation procedure is completed.
9. The method according toclaim 8, further comprising:
automatically disabling the delivering of the microwave energy to the tissue in response to a determination that the ablation procedure is completed.
10. The method according toclaim 1, further comprising:
determining a percentage of completion of an ablation procedure based on any one or a combination of the plurality of Doppler shifts, the determined ablation zone characteristic, an elapsed duration for which the microwave energy is delivered to the tissue, a location in the tissue to which the microwave energy is delivered, or one or more characteristics of a signal by which the microwave energy is delivered; and
displaying, via the graphical user interface, an indicator of the percentage of completion of the ablation procedure.
11. The method according toclaim 10, further comprising:
automatically adjusting, by way of one or more respective settings of the ablation device, one or more characteristics of a microwave signal by which the microwave energy is delivered to the tissue based on the percentage of completion of the ablation procedure.
12. The method according toclaim 1, wherein the ablation zone characteristic includes one or more of an ablation zone shape, an ablation zone size, or an ablation zone location.
13. The method according toclaim 1, wherein the representation of the ablation zone characteristic includes a uniformly-colored or uniformly-shaded shape superimposed, by way of the graphical user interface, upon a portion of the image that corresponds to an ablation zone.
14. The method according toclaim 1, wherein the representation of the ablation zone characteristic includes a shape having a plurality of levels of shading or coloring corresponding to a plurality of respective levels of a characteristic of the plurality of Doppler shifts, wherein the shape is superimposed, by way of the graphical user interface, upon a corresponding portion of the image.
15. The method according toclaim 1,
wherein the plurality of Doppler shifts include a first Doppler shift having a first direction and a second Doppler shift having a second direction, and
wherein the representation of the ablation zone characteristic includes speckles of a first color and speckles of a second color, wherein the speckles of the first color correspond to locations in the tissue based upon which the first Doppler shift is detected, and the speckles of the second color correspond to locations in the tissue based upon which the second Doppler shift is detected.
16. The method according toclaim 1, wherein the microwave energy and the ultrasound energy are simultaneously delivered to the tissue.
US15/897,8032017-02-222018-02-15Ultrasound doppler and elastography for ablation prediction and monitoringAbandonedUS20180235576A1 (en)

Priority Applications (6)

Application NumberPriority DateFiling DateTitle
US15/897,803US20180235576A1 (en)2017-02-222018-02-15Ultrasound doppler and elastography for ablation prediction and monitoring
JP2018028713AJP7231983B2 (en)2017-02-222018-02-21 Ultrasound Doppler and elastography for resection prediction and monitoring
EP18157796.6AEP3366252B1 (en)2017-02-222018-02-21Ultrasound doppler and elastography for ablation prediction and monitoring
CN201810153994.9ACN108451549B (en)2017-02-222018-02-22System for ablation zone detection
CN201820262089.2UCN209360741U (en)2017-02-222018-02-22 System for Ablation Zone Detection
CN202111190442.3ACN113907796A (en)2017-02-222018-02-22 System for ablation zone detection

Applications Claiming Priority (2)

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US201762462129P2017-02-222017-02-22
US15/897,803US20180235576A1 (en)2017-02-222018-02-15Ultrasound doppler and elastography for ablation prediction and monitoring

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US62462129Continuation2017-02-22

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US20180235576A1true US20180235576A1 (en)2018-08-23

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EP (1)EP3366252B1 (en)
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CN (3)CN209360741U (en)

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Publication numberPublication date
JP7231983B2 (en)2023-03-02
EP3366252A1 (en)2018-08-29
EP3366252B1 (en)2020-07-08
CN209360741U (en)2019-09-10
JP2018149276A (en)2018-09-27
CN108451549B (en)2021-10-15
CN108451549A (en)2018-08-28
CN113907796A (en)2022-01-11

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